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NASA Dragonfly Mission - Coaxial Rotor Test & CFD Prediction
Sven Schmitz
, Jason Cornelius
, Gracelyne Allred
,
Jose Palacios
, Richard R. Heisler
, Bernadine Juliano
, Gino Perrotta
, Felipe Ruiz
Aerospace Engineering
Institute of Energy and the Environment (IEE)
Research output
:
Contribution to conference
›
Paper
›
peer-review
6
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Scopus citations
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Dive into the research topics of 'NASA Dragonfly Mission - Coaxial Rotor Test & CFD Prediction'. Together they form a unique fingerprint.
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Keyphrases
Computational Fluid Dynamic Prediction
100%
Dragonfly
100%
Coaxial Rotor
100%
Rotor Testing
100%
Rotor Performance
80%
Computational Fluid Dynamics
60%
Transonic
60%
Titan
60%
Rotor
40%
Dynamic Performance
40%
URANS
40%
Saturn
20%
Airfoil
20%
Reynolds number
20%
Performance Prediction
20%
Confidence Level
20%
Performance Level
20%
Validation Studies
20%
Flight Envelope
20%
Hovering
20%
Performance Data
20%
Performance Estimation
20%
Rotor System
20%
Windmill
20%
Heavy Gas
20%
Braking
20%
Fully Turbulent
20%
Computational Fluid Dynamics Validation
20%
Uncertainty Quantification
20%
Gas Test
20%
New Frontiers
20%
Flow Solver
20%
Spalart-Allmaras Turbulence Model
20%
Closed-loop Simulation
20%
Turbulent Wake
20%
Vortex Ring State
20%
Fixed pitch
20%
Dynamics Results
20%
Performance Matrix
20%
Engineering
Rotors
100%
Computational Fluid Dynamics
100%
NASA
100%
Rotor Performance
80%
Dynamic Performance
40%
Full Scale
20%
Closed Loop
20%
Airfoil
20%
Reynolds' Number
20%
Confidence Level
20%
Anchors
20%
Performance Prediction
20%
Lookup Table
20%
Flight Envelope
20%
Rotor System
20%
Performance Data
20%
Uncertainty Quantification
20%
Test Setup
20%
Flow Solver
20%
Test Tunnel
20%
Physics
Computational Fluid Dynamics
100%
Transonic Flow
60%
Tunnel
60%
Reynolds Number
20%
Airfoil
20%
Vortex Ring
20%
Turbulence Model
20%
Uncertainty Quantification
20%
Protective Atmosphere
20%
Flight Envelope
20%